Rutgers Intelligent Transportation Systems (RITS) Laboratory, Department of Civil and Environmental Engineering, Rutgers University, 96 Frelinghuysen Road, Piscataway, NJ 08854, United States.
Accid Anal Prev. 2013 Jun;55:192-201. doi: 10.1016/j.aap.2013.02.031. Epub 2013 Mar 15.
Work zones are temporary traffic control zones that can potentially cause safety problems. Maintaining safety, while implementing necessary changes on roadways, is an important challenge traffic engineers and researchers have to confront. In this study, the risk factors in work zone safety evaluation were identified through the estimation of a crash frequency (CF) model. Measurement errors in explanatory variables of a CF model can lead to unreliable estimates of certain parameters. Among these, work zone length raises a major concern in this analysis because it may change as the construction schedule progresses generally without being properly documented. This paper proposes an improved modeling and estimation approach that involves the use of a measurement error (ME) model integrated with the traditional negative binomial (NB) model. The proposed approach was compared with the traditional NB approach. Both models were estimated using a large dataset that consists of 60 work zones in New Jersey. Results showed that the proposed improved approach outperformed the traditional approach in terms of goodness-of-fit statistics. Moreover it is shown that the use of the traditional NB approach in this context can lead to the overestimation of the effect of work zone length on the crash occurrence.
工作区是可能导致安全问题的临时交通管制区。在道路上实施必要的变更时,保持安全是交通工程师和研究人员必须面对的一个重要挑战。在这项研究中,通过估计碰撞频率 (CF) 模型,确定了工作区安全评估中的风险因素。CF 模型中解释变量的测量误差会导致某些参数的估计不可靠。其中,工作区长度在该分析中引起了主要关注,因为它可能会随着施工进度的变化而变化,通常没有得到妥善记录。本文提出了一种改进的建模和估计方法,该方法涉及使用与传统负二项式 (NB) 模型集成的测量误差 (ME) 模型。该方法与传统 NB 方法进行了比较。两个模型均使用包含新泽西州 60 个工作区的大型数据集进行了估计。结果表明,在拟合优度统计方面,所提出的改进方法优于传统方法。此外,结果表明,在这种情况下使用传统 NB 方法可能会导致对工作区长度对碰撞发生的影响的高估。